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Investigating Water Movement Within and Near Wells Using Active Point Heating and Fiber Optic Distributed Temperature Sensing

机译:使用有源点加热和光纤分布式温度传感研究井内和靠近井内的水运动

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摘要

There are few methods to provide high-resolution in-situ characterization of flow in aquifers and reservoirs. We present a method that has the potential to quantify lateral and vertical (magnitude and direction) components of flow with spatial resolution of about one meter and temporal resolution of about one day. A fiber optic distributed temperature sensor is used with a novel heating system. Temperatures before heating may be used to evaluate background geothermal gradient and vertical profile of thermal diffusivity. The innovation presented is the use of variable energy application along the well, in this case concentrated heating at equally-spaced (2 m) localized areas (0.5 m). Relative to uniform warming this offers greater opportunity to estimate water movement, reduces required heating power, and increases practical length that can be heated. Numerical simulations are presented which illustrate expected behaviors. We estimate relative advection rates near the well using the times at which various locations diverge from a heating trajectory expected for pure conduction in the absence of advection. The concept is demonstrated in a grouted 600 m borehole with 300 heated patches, though evidence of vertical water movement was not seen.
机译:很少有方法可以提供含水层和水库流量的高分辨率原位表征。我们提出了一种方法,该方法具有量化流量的横向和垂直(幅度和方向)组件,其空间分辨率约为一米和约一天的时间分辨率。光纤分布式温度传感器与新型加热系统一起使用。加热前的温度可用于评估背景地热梯度和垂直型材的热扩散率。提出的创新是在井中使用可变能量应用,在这种情况下,在等间隔(2μm)局部区域(0.5μm)处浓缩加热。相对于均匀的变暖,这提供了更大的机会来估计水运动,减少所需的加热功率,并增加可以加热的实用长度。提出了数值模拟,其示出了预期的行为。我们使用在没有平流的情况下,使用各种位置偏离的时间来估计井附近的相对平流速率。该概念在灌浆600米钻孔中展示,其中300个加热斑块,但没有看到垂直水运动的证据。

著录项

  • 作者

    Frank Selker; John Selker;

  • 作者单位
  • 年度 2018
  • 总页数
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类

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